• 제목/요약/키워드: Neuroepithelial cells

검색결과 9건 처리시간 0.019초

인태아 폐의 신경상피소체와 신경종말에 관한 미세구조적 연구 (Innervation of Neuroepithelial Bodies in Bronchiolar Epithelium of Human Fetal Lung)

  • 민용일;윤재룡
    • Applied Microscopy
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    • 제25권1호
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    • pp.48-64
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    • 1995
  • Ultrastructure of nerves and their associated cells in the bronchiolar epithelium of the human fetal lung were studied with ultrastructural and immunohistochemical methods. The neuroendocrine cells were scattered along the basal part of non-ciliated respiratory epithelium and appeared as single cell (solitary neuroendocrine cell) or groups (neuroepithelial bodies). The solitary neuroendocrine cells were devoid of any detectable innervation, while the neuroepithelial bodies were associated with nerve ending containing morphologically afferent (sensory) and efferent (motor) intraepithelial terminals. The afferent nerve endings contained abundant mitochondria with long cristae. The efferent nerve endings were characterized by the presence of synaptic vesicles. Both types of nerve endings formed synaptic junction between nerve endings and neuroepithelial bodies cells. Serial sections of the intraepithelial nerves revealed that both morphologically afferent and efferent types of nerve endings may be formed by the same nerve fiber. By immunohistochemistry, bombesin and serotonin were localized in solitary neuroendocrine cells and neuroepithelial bodies of human fetal lung from various prenatal age groups. These results suggest that the neuroepithelial bodies cells of the human fetal lung have neuroreceptor function.

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마우스 초기 신경배형성과정에서 신경상피세포의 조직학적 및 미세구조적 분화 (Histological and Ultrastructural Differentiations of the Neuroepithelial Cells in the Mouse Embryo during Early Neurulation)

  • 김율아;정영화
    • Applied Microscopy
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    • 제29권1호
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    • pp.105-124
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    • 1999
  • 마우스(ICR mouse)의 신경배형성에 따른 뇌 및 척수 신경상피의 조직학적 및 미세구조적 분화를 관찰하여 다음과 같은 결과를 얻었다. 배발생 8일 (embryonic day 8) 마우스배 (mouse embryo)에서 위중층원주상피의 신경판 및 신경고랑이 형성되었고, 배발생 9일에서는 두부의 전단부 및 말단부를 제외한 전 체장에서 신경관이 형성되었으며, 배발생 10일에서는 미아에서 이차신경배형성이 이루어졌다. 배발생 8일 마우스배의 미부 말단부에서는 신경상피와 중간엽과의 경계가 불분명한 원시선이 관찰되었고, 두부에서는 신경상피, 척삭 및 중간엽세포의 구분이 분명하였다. 배발생 9일과 10일 마우스배의 경우, 후뇌 부위에서는 표피 외배엽세포의 결합에 의하여, 척수 부위에서는 신경상피세포의 결합에 의하여 덮개판을 이루어졌고, 바닥판은 높이가 낮은 위중층원주상피세포로 이루어겼다. 배발생 10일 마우스배에서 척수의 운동신경이 처음 분화되었다. 배발생 9일과 10일 마우스배에서 신경상피세포들은 세포소기관의 분화 및 전자밀도의 차이에 따라 암세포, 중간형세포 및 명세포로 구분되었다. 배발생 9일에서는 모든 형의 세포가 관찰되었으나, 배발생 10일에서는 중간형 및 명세포들 만이 관찰되었다. 모든 신경상피세포에서 free ribosome 및 polysome들이 다같이 발달하였으나, 암세포에서는 RER과 lipid droplet들, 중간형세포와 명세포에서는 Golgi체들이 발달하였다. 중간형세포의 세포질돌기에서는 신경미세섬유, 명세포의 세포질들기에서는 신경미세섬유 뿐만 아니라 미세소관들도 다수 관찰되었다.

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Mimicking the Human Articular Joint with In Vitro Model of Neurons-Synoviocytes Co-Culture

  • Jakub Chwastek;Marta Kedziora;Malgorzata Borczyk;Michal Korostynski;Katarzyna Starowicz
    • International Journal of Stem Cells
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    • 제17권1호
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    • pp.91-98
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    • 2024
  • The development of in vitro models is essential in modern science due to the need for experiments using human material and the reduction in the number of laboratory animals. The complexity of the interactions that occur in living organisms requires improvements in the monolayer cultures. In the work presented here, neuroepithelial stem (NES) cells were differentiated into peripheral-like neurons (PLN) and the phenotype of the cells was confirmed at the genetic and protein levels. Then RNA-seq method was used to investigate how stimulation with pro-inflammatory factors such as LPS and IFN𝛾 affects the expression of genes involved in the immune response in human fibroblast-like synoviocytes (HFLS). HFLS were then cultured on semi-permeable membrane inserts, and after 24 hours of pro-inflammatory stimulation, the levels of cytokines secretion into the medium were checked. Inserts with stimulated HFLS were introduced into the PLN culture, and by measuring secreted ATP, an increase in cell activity was found in the system. The method used mimics the condition that occurs in the joint during inflammation, as observed in the development of diseases such as rheumatoid arthritis (RA) or osteoarthritis (OA). In addition, the system used can be easily modified to simulate the interaction of peripheral neurons with other cell types.

인태아(人胎兒) 척추(脊椎) 중심관(中心管) 상의층(上衣層)의 발육(發育)에 관한 전자현미경적(電子顯微鏡的) 연구(硏究) (Ultrastructural Study on the Development of the Ependyma of the Central Canal in Human Fetal Spinal Cord)

  • 윤재룡;최영주;오창석
    • Applied Microscopy
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    • 제23권1호
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    • pp.109-124
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    • 1993
  • The prenatal development of thoracic spinal cord was studied by electron microscope in human embryos and fetuses ranging from 9mm to 260mm crown-rump length (5-30 weeks of gestational age). Ependymal cells in all fetal ages had conspicuous junctional complexes close to the lumen of the central canal into which microvilli and cilia projected. The ependymal cells contained numerous longitudinally arranged mitochondria, flattened cisternae of endoplasmic reticulum and Golgi complex. At 20 mm embryo, the floor and roof plates were composed of ependymoglial cells and undifferentiated neuroepithelial cells. The neuroepithelia of the sacral spinal cord were delineated from central medullary cord. By 100 mm fetus few undifferentiated neuroepithelial cells remained in the floor and roof plates. At 150 mm fetus, the whole central canal was formed by ciliated columnar epithelial cells containing cilia with basal bodies. The microvilli became tangled and club-shaped and formed a matted surface. The canal was filled with areas of dark and pale amorphous materials bounded by membrane-like structure. These two types of material were found throughout the whole central canal from 100 mm fetus onwards. By 260 mm fetus, microfibrils were first observed in the ependymal cells. In conclusion, it seems that early development and differentiation of central canal ependyma are simlar to that in other part of the brain ventricular system although ependymoglial cells are more prominent.

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Hippo Signaling Circuit and Divergent Tissue Growth in Mammalian Eye

  • Moon, Kyeong Hwan;Kim, Jin Woo
    • Molecules and Cells
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    • 제41권4호
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    • pp.257-263
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    • 2018
  • Vertebrate organ development is accompanied by demarcation of tissue compartments, which grow coordinately with their neighbors. Hence, perturbing the coordinative growth of neighboring tissue compartments frequently results in organ malformation. The growth of tissue compartments is regulated by multiple intercellular and intracellular signaling pathways, including the Hippo signaling pathway that limits the growth of various organs. In the optic neuroepithelial continuum, which is partitioned into the retina, retinal pigment epithelium (RPE) and ciliary margin (CM) during eye development, the Hippo signaling activity operates differentially, as it does in many tissues. In this review, we summarize recent studies that have explored the relationship between the Hippo signaling pathway and growth of optic neuroepithelial compartments. We will focus particularly on the roles of a tumor suppressor, neurofibromin 2 (NF2), whose expression is not only dependent on compartment-specific transcription factors, but is also subject to regulation by a Hippo-Yap feedback signaling circuit.

Differentiation of Neuroepithelial Progenitor Cells Implanted into Newborn Rat Brain Striatum

  • Kwon, Sung-Choon;Park, Jung-Sun;Lee, Jean-Ju;Nam, Taick-Sang;Yeon, Dong-Soo
    • The Korean Journal of Physiology and Pharmacology
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    • 제5권1호
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    • pp.9-17
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    • 2001
  • It has been demonstrated that multipotent neuronal progenitor cells can be isolated from the developing or adult CNS and proliferated in vitro in response to epidermal growth factor. The present study was undertaken to investigate the differentiation of neuronal progenitor cells after transplantation into the neonatal rat forebrain striatum. Primary cultured progenitor cells were labeled with 3,3'-dioctadecycloxacarbonyl- amine perchlorate (DiO). DiO labeled progenitor cells were implanted into neonatal rat striatum. Implanted DiO labeled progenitor cells were differentiated into astrocytes and GABAergic neurons. These results suggest that implanted progenitor cells can be differentiated into neurons in host forebrain striatum. In addition, our data show that DiO labeling is a useful technique for tracing implanted progenitor cells.

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Neuroendocrine carcinoma of the lung 치험 2례 (Neuroendocrine Carcinoma of the Lung - A Report of two Cases -)

  • 문준호
    • Journal of Chest Surgery
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    • 제25권8호
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    • pp.806-811
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    • 1992
  • The primary neuroendocrine carcinomas[NEC] of the lung are relatively rare. There are classified histologically into the following groups. 1] bronchial carcinoid, 2] well differentiated neuroendocrine carcinoma[WDNC], 3] intermediate cell neuroendocrine carci-noma[ICNC], 4] small cell neuroendocrie carcinoma[SCNC]. The NE cells can be found throughout the mucosa of the bronchial tree by the electron microscopy. By the immunocytochemistry, Neuron-specific enolase[NSE], serotonin, born-csin, and calcitonin are found in normal solitary NE cells and neuroepithelial bodies. The immunohistochemistry has the advantage that it can be applied on routine pathology specimens. The NSE was localized in all of the NE granule bearing tumors but also present in 57 per cent of the non NE carcinomas. Together the combination of chromogranin A, bombesin and NSE should provide an exellent signature for tumor cells expressing NE features, such as carcinoids and other NE carcinomas. We have experienced two cases of primary pulmonary NEC in 59 and 29 years old men. The former was admitted due to exertional dyspnea and left chest pain, the latter, newly developed mass on chest X-ray. They were treated by Lt pneumonectomy with LN dissection and RLL resection with LN dissection The postoperative diagnoses were could be confirmed by NSE study as NEC which were SCNEC and INEC in subgroups. The postoperative courses were uneventful.

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In Vivo Expression of EphrinA5-Fc in Mice Results in Cephalic Neural Crest Agenesis and Craniofacial Abnormalities

  • Noh, Hyuna;Park, Eunjeong;Park, Soochul
    • Molecules and Cells
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    • 제37권1호
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    • pp.59-65
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    • 2014
  • Eph receptors and their ligands ephrins have been implicated in guiding the directed migration of neural crest cells (NCCs). In this study, we found that Wnt1-Cre-mediated expression of ephrinA5-Fc along the dorsal midline of the dien- and mesencephalon resulted in severe craniofacial malformation of mouse embryo. Interestingly, expression of cephalic NCC markers decreased significantly in the frontonasal process and branchial arches 1 and 2, which are target areas for the migratory cephalic NCCs originating in the dien- and mesencephalon. In addition, these craniofacial tissues were much smaller in mutant embryos expressing ephrinA5-Fc. Importantly, EphA7-positive cephalic NCCs were absent along the dorsal dien- and mesencephalon of mutant embryos expressing ephrinA5-Fc, suggesting that the generation of cephalic NCCs is disrupted due to ephrinA5-Fc expression. NCC explant experiments suggested that ephrinA5-Fc perturbed survival of cephalic NCC precursors in the dorsal midline tissue rather than affecting their migratory capacity, which was consistent with our previous report that expression of ephrinA5-Fc in the dorsal midline is responsible for severe neuroepithelial cell apoptotic death. Taken together, our findings strongly suggest that expression of ephrinA5-Fc decreases a population of cephalic NCC precursors in the dorsal midline of the dien- and mesencephalon, thereby disrupting craniofacial development in the mouse embryos.

소아외과 환자에서 기형종의 치료 결과 (Outcome of the Teratoma in Pediatric Surgical Patients)

  • 이호균;박경섭;최수진나;김신곤;정상영
    • Advances in pediatric surgery
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    • 제9권2호
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    • pp.94-97
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    • 2003
  • The teratoma is a unique complex neoplasm and is one of the most frequent pediatric tumors originated from the extragonadal germ cells. Mature teratoma is composed of mature differentiated tissues, while immature teratoma always contains embryonic tissues of variable degrees of immaturity, especially in the neuroepithelial elements. Diagnosis of teratoma is relatively easy by conventional radiologic study, but the immaturity can be identified only by histopathological examination. Between January 1993 to December 2002, 63 cases of teratoma were operated and analysed retrospectively at the Chonnam University Hospital Female to male ratio was about 3:1 and age distribution was relatively even. Among 63 cases, gonadal teratoma was the most common (52.4%), followed by sacrococcygeal (25.4%), retroperitoneal (9.5%) and mediastinal teratoma (9.5%). Fifty-six cases were mature teratomas and seven were immature teratomas. Alpha-fetoprotein (AFP) was elevated in 4 of 6 immature cases, but in 2 of 51 mature ones Elevated AFP progressively returned to normal range by 1 month after operation in all. Complete excision of the mass was performed, and major complication was not noticed. In five immature cases, PEB chemotherapy (Cisplatin, Etoposide, Bleomycin) was performed. Two of 2 cases in histological grade II were well tolerated to the aggressive chemotherapy. One of three cases in grade III expired due to severe bone marrow depression, and two of them expired by tumor recurrences. In conclusion, immature teratoma in histological grade III showed high potentiality of recurrence. Therefore, postoperative chemotherapy has to be applied to the high graded immature tumors.

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